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Estimation of Roughness Parameters Within Sparse Urban-Like Obstacle Arrays

机译:稀疏城市样障碍物阵列中的粗糙度参数估计

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We conduct wind-tunnel experiments on three different uniform roughness arrays composed of sparsely distributed rectangular cylinders for the estimation of surface parameters. Roughness parameters such as the roughness length zo and zero-plane displacement d are extracted using a best-fit approximation of the measured wind velocity. We also perform a large-eddy simulation (LES) to confirm that four sampling points are sufficient to surrogate a space average above the canopy layer of the sparse roughness arrays. We propose a new morphological model from a systematic analysis of experimental data on the arrays. The friction velocity predicted by the proposed model agrees well with the peak value of the measured Reynolds shear stress. The proposed model is further validated in an additional wind-tunnel experiment conducted on a scaled configuration of a real urban area exposed to four wind directions. The proposed model is found to perform very well particularly in the estimation of the friction velocity, readily leading to a better estimation of turbulence, which is essential for an accurate prediction of pollutant dispersion.
机译:我们对由稀疏分布的矩形圆柱体组成的三个不同的均匀粗糙度阵列进行风洞实验,以估计表面参数。使用测量风速的最佳拟合来提取粗糙度参数,例如粗糙度长度zo和零平面位移d。我们还执行大涡模拟(LES),以确认四个采样点足以替代稀疏粗糙度阵列的冠层上方的空间平均值。我们通过对阵列上的实验数据进行系统分析,提出了一种新的形态学模型。所提出的模型预测的摩擦速度与测得的雷诺剪切应力的峰值非常吻合。在暴露于四个风向的真实市区的按比例配置的风洞实验中,进一步验证了所提出的模型。发现所提出的模型在摩擦速度的估计方面表现非常出色,很容易导致对湍流的更好估计,这对于准确预测污染物的扩散至关重要。

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